Determine nutrient conditions, cycling, and biological effects in two riverine parks, St.Croix National Scenic River (SACN) and Upper Mississippi River National Recreation Area (MNRA): Data

Hydraulic connection between channels and floodplains (“connectivity”) is a fundamental determinant of ecosystem function in large floodplain rivers. Factors controlling material processing in these rivers depend not only on the degree of connectivity but also on the sediment conditions, nutrient loads and source. Nutrient cycling in the nutrient-rich upper Mississippi River (MISS) is relatively well studied, while that of less eutrophic tributaries is not (e.g., St Croix River; SACN). We examined components of nitrogen cycling in two floodplain rivers of contrasting nutrient enrichment and catchment land-use to test the hypothesis that N-cycling rates will be greater in the MISS with elevated nutrient-loads and productivity in contrast to the relatively nutrient-poor SACN. Nitrate (NO3-N) concentrations were highest in flowing habitats in the MISS and often undetectable in isolated backwaters (IBW) except where groundwater inputs occurred. In the SACN, (NO3-N) concentrations were greatest in the flowing backwater (FBW) where groundwater inputs were high. Ambient nitrification in the MISS was 2x that in SACN and tended to be lowest in the main channel (MC). Denitrification was 3x higher in the MISS than SACN; N-limited in both rivers. Community P/R (production/respiration) was >1 in the MISS and likely provisioned labile C to fuel microbial metabolism and dissimilatory NO3-N reduction, while the heterotrophic (P/R<1) nature of the SACN likely limited microbial metabolism and NO3-N dissimilation. It appears that N-cycling in the SACN was driven by groundwater, while that in the MISS was supported mainly by water column N-sources.

Data and Resources

Field Value
accessLevel public
bureauCode {010:12}
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catalog_@id https://ddi.doi.gov/usgs-data.json
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identifier http://datainventory.doi.gov/id/dataset/usgs-5ae07ce1e4b0e2c2dd2e9c38
metadata_type geospatial
modified 2021-08-20T00:00:00Z
old-spatial -180.0, -90.0, 180.0, 90.0
publisher U.S. Geological Survey
resource-type Dataset
source_datajson_identifier true
source_hash aded042d6b53e3e306620ca311ca7bcd033dc741b4d9cfdcf0c9e0f12c38cd40
source_schema_version 1.1
spatial {"type": "Polygon", "coordinates": [[[-180.0, -90.0], [-180.0, 90.0], [ 180.0, 90.0], [ 180.0, -90.0], [-180.0, -90.0]]]}
theme {geospatial}
Groups
  • AmeriGEOSS
  • National Provider
  • North America
Tags
  • AmeriGEO
  • AmeriGEOSS
  • CKAN
  • GEO
  • GEOSS
  • National
  • North America
  • United States
  • biota
  • connectivity
  • denitrification
  • mississippi-river
  • nitrate
  • productivity
  • st-croix-national-scenic-river
  • upper-mississippi-river-national-recreation-area
  • usgs-5ae07ce1e4b0e2c2dd2e9c38
isopen False
license_id notspecified
license_title License not specified
maintainer Lynn A Bartsch
maintainer_email lbartsch@usgs.gov
metadata_created 2025-09-24T18:53:53.394404
metadata_modified 2025-09-24T18:53:53.394413
notes Hydraulic connection between channels and floodplains (“connectivity”) is a fundamental determinant of ecosystem function in large floodplain rivers. Factors controlling material processing in these rivers depend not only on the degree of connectivity but also on the sediment conditions, nutrient loads and source. Nutrient cycling in the nutrient-rich upper Mississippi River (MISS) is relatively well studied, while that of less eutrophic tributaries is not (e.g., St Croix River; SACN). We examined components of nitrogen cycling in two floodplain rivers of contrasting nutrient enrichment and catchment land-use to test the hypothesis that N-cycling rates will be greater in the MISS with elevated nutrient-loads and productivity in contrast to the relatively nutrient-poor SACN. Nitrate (NO3-N) concentrations were highest in flowing habitats in the MISS and often undetectable in isolated backwaters (IBW) except where groundwater inputs occurred. In the SACN, (NO3-N) concentrations were greatest in the flowing backwater (FBW) where groundwater inputs were high. Ambient nitrification in the MISS was 2x that in SACN and tended to be lowest in the main channel (MC). Denitrification was 3x higher in the MISS than SACN; N-limited in both rivers. Community P/R (production/respiration) was &gt;1 in the MISS and likely provisioned labile C to fuel microbial metabolism and dissimilatory NO3-N reduction, while the heterotrophic (P/R&lt;1) nature of the SACN likely limited microbial metabolism and NO3-N dissimilation. It appears that N-cycling in the SACN was driven by groundwater, while that in the MISS was supported mainly by water column N-sources.
num_resources 2
num_tags 17
title Determine nutrient conditions, cycling, and biological effects in two riverine parks, St.Croix National Scenic River (SACN) and Upper Mississippi River National Recreation Area (MNRA): Data